M. Aliofkhazraei – Graphene Science Handbook (6 Volume set, 2016)
2.370 ₽
Автор: M. Aliofkhazraei
Название книги: Graphene Science Handbook (6 Volume set)
Формат: PDF
Жанр: Нанотехнологии
Страницы: 3430
Качество: Изначально компьютерное, E-book
1. Fabrication Methods
Discover the Unique Electron Transport Properties of Graphene
Volume 1 of Graphene Science Handbook. – The Graphene Science Handbook is a six-volume set that describes graphene’s special structural, electrical, and chemical properties. The book considers how these properties can be used in different applications (including the development of batteries, fuel cells, photovoltaic cells, and supercapacitors based on graphene) and produced on a massive and global scale.
– Volume One: Fabrication Methods
– Volume Two: Nanostructure and Atomic Arrangement
– Volume Three: Electrical and Optical Properties
– Volume Four: Mechanical and Chemical Properties
– Volume Five: Size-Dependent Properties
– Volume Six: Applications and Industrialization
This handbook describes the fabrication methods of graphene; the nanostructure and atomic arrangement of graphene; graphene’s electrical and optical properties; the mechanical and chemical properties of graphene; the size effects in graphene, characterization, and applications based on size-affected properties; and the application and industrialization of graphene.
Volume one is dedicated to fabrication methods and strategies of graphene and covers:
– Various aspects of graphene device process flows
– Experimental procedures for graphene nanoribbons (GNRs) from graphene
– Advances in graphene synthesis routes
– The fabrication of graphene nanoribbons (GNRs) by different methods
– The synthesis of graphene oxide, its reduction, and its functionalization with organic materials
– The electrophoretic deposition (EPD) processing of graphene family materials
– The preparation of graphene using the solvent dispersion method
– Methods for the preparation of graphene oxide
– The fabrication and performance of a gate-free graphene pH sensor
– Advances in wet chemical fabrication of graphene, graphene oxide (GO) and more
2. Nanostructure and Atomic Arrangement
Volume two is dedicated to nanostructure and atomic arrangement and covers:
– The potential applications of graphene heterostructures, particularly, graphene/h-BN heterostructures
– Atomic-scale defects in graphene and the huge impact they have on its low-energy electronic structure
– Recent findings on graphene plasmonics
– The storage of hydrogen between graphene and inside graphene-oxide frameworks (GOFs)
– The nitrogen contents, species, synthesis methods, and application on nitrogen-doped graphene
– Modification methods and applications of graphene and graphene oxide
– Phonon spectra and vibrational thermodynamic characteristics of graphene nanofilms
– The imaging of graphene by scanning electron microscopy (SEM)
– Advances in the formation of graphene-based three-dimensional (3D) architectures
3. Electrical and Optical Properties
Volume three is dedicated to graphene’s electrical and optical properties and covers:
Graphene and graphene nanoribbons for use in high-frequency transistors, energy-efficient electronics and photonic devices The interface of graphene/high-κ dielectrics The strain-induced modifications of plasmons in graphene A possible advanced physical framework for treating graphenic structures Recent progresses in the electric lens based on graphene-like materials The thermal and thermoelectric transport properties of graphene A numerical method for simulating the electromagnetic field interaction with single-layer graphene and more
4. Volume four is dedicated to the mechanical and chemical properties of graphene and covers:
Mechanical properties using a continuum elastic model introduced to describe graphene’s elastic behavior
Results of theoretical investigations of the mechanical properties of graphene structures
Mechanical stabilities and properties of graphene under various strains
Different types of graphene devices for biomolecule and gas sensing
Printed graphene-based electrochemical sensor technology
Various types of graphene-based electrochemical sensors
The chemical vapor deposition of graphene on copper
Strategies covering graphene modification
Graphene in solar cells, including transparent electrodes, active layers, and interface layer
Changes at the micrometric and nanometric scales, and more
Contents
Mechanical Properties
Mechanical Properties of Graphene
Effective Elastic Properties of a Novel Continuous Fuzzy Fiber-Reinforced Composite with Wavy Carbon Nanotubes
Effects of Vacancies, Nitrogen Atoms, and sp 3 Bonds on Mechanical Properties of Graphene Using Molecular Dynamics Simulations
Mechanical Properties of Graphene Sheets
Mechanical Stabilities and Properties of Graphene and Its Modification by BN Predicted from First-Principles Calculations
Some Mechanical Properties of Graphene and Their Role in Forming Polymer Nanocomposites
Chemical Fabrication/Properties
Grain Boundaries in Chemical Vapor Deposition-Grown Graphene
Graphene-Based Biological and Chemical Sensors
Printed Graphene-Based Electrochemical Sensors
Chemical Routes to Graphene Quantum Dots: Photoluminescence Mechanism and Novel Applications
Electrochemical Biosensors and Biofuel Cells Based on Graphene and Graphene
Chemical Modification of Graphene
Graphene Synthesis by Chemical Vapor Deposition on Copper
Chemically Modified Graphene and Its Applications in Electrochemical Sensing
Graphene: Electrochemical Exfoliation and Applications
Modification of Graphene with Polymers via Addition Chemistry
Molecular Theory of Graphene Chemical Modification
Recent Progress
Low-Cost and Simple Method for Graphene Synthesis
Graphene-Based Solar
Graphene Production from Chlorination of Metallocenes
Chemical Modification of Graphene with Polymers
Charge Carrier Mobility in Graphene: Strain and Screening Effects
Graphene-Based Antibacterial Materials
Nanofluidics in Graphene-Based Material Systems
Nanoporous Graphene Sheets for Gas Separation
Photorefractive Properties of Graphene-Based Organic Systems
Applications of Graphene and Its Derivatives in Electrochemical Sensors and Comparison Study of Graphene as a Modifier with Other Modifiers
5. Size-Dependent Properties
Volume five is dedicated to size effects in graphene, characterization, and applications based on size-affected properties and covers:
– The use of graphene as a tunnel barrier for both charge and spin transport
– The mechanical behavior of Kevlar–graphene fibers
– Size-controlled graphene and cases of graphene nanostructures with size-dependent properties
– The applications of graphene as adsorbents, supporting and hybridization materials, and catalysts for removal of pollutants in contaminated water and air
– Recent research efforts to synthesize a variety of graphene-based structures
– The properties of indirect coupling between magnetic moments in monolayer graphene nanostructures
– The recent results of the electronic properties of graphene/metal systems
– Interface traps in graphene field-effect devices
– Semi-analytical models for the calculation of the quantum capacitance of both monolayer and bilayer graphene and its nanoribbons
– The various properties of mono- and multilayers of silicene compared with the corresponding properties of graphene
– The most relevant data obtained in the field of the vibrational characterization of graphene and graphene-based materials and more
6. Applications and Industrialization
Volume six is dedicated to the application and industrialization of graphene and covers:
– The design of graphene- and biomolecule-based nanosensors and nanodevices
– The use of graphene-based field-effect-transistor (GFET)-like structures as sensing substrates and DNA aptamers as sensing elements
– Recent advances in graphene-based DNA sensors
– The antibacterial properties of graphene-based nanomaterial (NM)
– The chemical and physical properties of graphene and its current uses
– The development of sensitive and selective field-effect transistors (FET) biosensors based on graphene
– The unique properties of ordered graphene (G)
– Various methods currently employed for the production of graphene nanocomposites
– The supramolecular chemistry of graphene derivatives, and more
Описание
Graphene Science Handbook (6 Volume set, 2016) — фундаментальное шеститомное издание под редакцией М. Алиофхазраеи, которое объединяет актуальные знания о графене от синтеза до практического применения. Это не просто сборник статей, а систематизированная энциклопедия, охватывающая все ключевые аспекты одного из самых перспективных материалов XXI века.
В шести томах подробно рассмотрены методы получения графена и его производных, физико-химические свойства, механические, электрические, тепловые и оптические характеристики, а также возможности использования в электронике, энергетике, биомедицине, композитных материалах и сенсорах. Особое внимание уделено масштабному производству, функционализации поверхности и вопросам безопасности наночастиц.
- Исследователям и разработчикам в области нанотехнологий и материаловедения
- Специалистам по наноэлектронике, энергетике и композитным материалам
- Студентам и аспирантам профильных технических и естественно-научных специальностей
- Инженерам, работающим над внедрением графена в промышленные продукты
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